Literature DB >> 12424796

Lifespan extension by caloric restriction: an aspect of energy metabolism.

Haruyoshi Yamaza1, Takuya Chiba, Yoshikazu Higami, Isao Shimokawa.   

Abstract

Caloric restriction (CR) may retard aging processes and extend lifespan in organisms by altering energy-metabolic pathways. In CR rodents, glucose influx into tissues is not reduced, as compared with control animals fed ad libitum (AL), although plasma concentrations of glucose and insulin are lower. Gene expression profiles in rodents have suggested that CR promotes gluconeogenesis and fatty acid biosynthesis in skeletal muscle. In the liver, CR promotes gluconeogenesis but decreases fatty acid synthesis and glycolysis. In lower organisms such as yeasts and nematodes, incomplete blocks in steps of insulin/insulin-like growth factor-1 (IGF-1) signal pathway extend lifespan. The life-prolonging effect of CR in yeasts requires NPT1 and SIR2 genes, both of which relate to sensing energy status and silencing genes. These findings stress the substantial role of energy metabolism on CR. Future studies on metabolic adaptation and gene silencing with regard to lower caloric intake will be warranted to understand the mechanisms of the anti-aging and life-prolonging effects of CR. Copyright 2002 Wiley-Liss, Inc.

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Year:  2002        PMID: 12424796     DOI: 10.1002/jemt.10212

Source DB:  PubMed          Journal:  Microsc Res Tech        ISSN: 1059-910X            Impact factor:   2.769


  10 in total

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2.  Downregulation of Grb2 contributes to the insulin-sensitizing effect of calorie restriction.

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3.  Energy restriction impairs natural killer cell function and increases the severity of influenza infection in young adult male C57BL/6 mice.

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4.  Clinical Experience of a Diet Designed to Reduce Aging.

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9.  The extract of Ginkgo biloba EGb 761 reactivates a juvenile profile in the skeletal muscle of sarcopenic rats by transcriptional reprogramming.

Authors:  Caroline Bidon; Joël Lachuer; Jordi Molgó; Anne Wierinckx; Sabine de la Porte; Bernadette Pignol; Yves Christen; Rolando Meloni; Herbert Koenig; Nicole Faucon Biguet; Jacques Mallet
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Review 10.  Harnessing the Benefits of Endogenous Hydrogen Sulfide to Reduce Cardiovascular Disease.

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Journal:  Antioxidants (Basel)       Date:  2021-03-04
  10 in total

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